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首页> 外文期刊>The American mineralogist >Coactosin-like 1 integrates signaling critical for shear-dependent thrombus formation in mouse platelets
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Coactosin-like 1 integrates signaling critical for shear-dependent thrombus formation in mouse platelets

机译:coactosin-liking 1集成了鼠标血小板中剪切依赖性血栓形成的信号传导。

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摘要

Platelet aggregate formation is a multistep process involving receptor-mediated, as well as biomechanical, signaling cascades, which are highly dependent on actin dynamics. We have previously shown that actin depolymerizing factor (ADF)/n-cofilin and Twinfilin 2a, members of the ADF homology (ADF-H) protein family, have distinct roles in platelet formation and function. Coactosin-like 1 (Cotl1) is another ADF-H protein that binds actin and was also shown to enhance biosynthesis of pro-inflammatory leukotrienes (LT) in granulocytes. Here, we generated mice lacking Cotl1 in the megakaryocyte lineage (Cotl1(-1-)) to investigate its role in platelet production and function. Absence of Cotl1 had no impact on platelet counts, platelet activation or cytoskeletal reorganization under static conditions in vitro. In contrast, Cotl1 deficiency markedly affected platelet aggregate formation on collagen and adhesion to immobilized von Willebrand factor at high shear rates in vitro, pointing to an impaired function of the platelet mechanoreceptor glycoprotein (GP) Ib. Furthermore, Cotl1(-/-) platelets exhibited increased deformability at high shear rates, indicating that the GPIb defect may be linked to altered biomechanical properties of the deficient cells. In addition, we found that Cotl1 deficiency markedly affected platelet LT biosynthesis. Strikingly, exogenous LT addition restored defective aggregate formation of Cotl1(-/-) platelets at high shear in vitro, indicating a critical role of platelet-derived LT in thrombus formation. In vivo, Cotl1 deficiency translated into prolonged tail bleeding times and protection from occlusive arterial thrombus formation. Together, our results show that Cotl1 in platelets is an integrator of biomechanical and LT signaling in hemostasis and thrombosis.
机译:血小板骨料形成是涉及受体介导的多步骤过程,以及生物力学,信号级联,其高度依赖于肌动蛋白动态。我们之前已经表明,肌动蛋白解聚因子(ADF)/ N-辛菌素和Twinfilin 2a,ADF同源性(ADF-H)蛋白质家族的成员在血小板形成和功能中具有明显的作用。 Coactosin样1(Cotl1)是另一种结合肌动蛋白的ADF-H蛋白,并且还显示出在粒细胞中增强促炎白嘧啶(LT)的生物合成。在这里,我们在巨核细胞谱系中缺乏Cotl1的小鼠(Cotl1(-1-)),以研究其在血小板生产和功能中的作用。在体外静态条件下,缺乏Cot11对血小板计数,血小板活化或细胞骨骼重组没有影响。相比之下,Cotl1缺乏症状对胶原蛋白和粘附性的血小板骨料形成显着,以在体外以高剪切速率固定的von Willebrand因子,指向血小板机械蛋白糖蛋白(GP)Ib的损伤功能。此外,Cotl1( - / - )血小板在高剪切速率下表现出增加的可变形性,表明GPIB缺陷可以与缺陷细胞的改变的生物力学性质相关联。此外,我们发现Cotl1缺乏显着影响血小板LT生物合成。尖锐的,在体外高剪切在高剪切处的Cotl1( - / - )血小板的外源性LT添加缺陷骨料形成,表明血小板衍生在血栓形成中的关键作用。在体内,Cotl1缺乏转化为延长尾血流出时间和免受闭塞动脉血栓形成的保护。我们的结果表明,血小板中的Cotl1是生物力学和LT信号在止血和血栓形成的积分器。

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